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利用交联去细胞基质实现子宫再生和构建。

Exploiting crosslinked decellularized matrix to achieve uterus regeneration and construction.

机构信息

School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, China.

Department of Pharmacy, The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou, China.

出版信息

Artif Cells Nanomed Biotechnol. 2020 Dec;48(1):218-229. doi: 10.1080/21691401.2019.1699828.

Abstract

Decellularized extracellular matrix (dECM) has been considered as a promising scaffold in xenotransplantation, yet natural tissue dECM is often mechanically weak and rapidly degraded, compromising the outcomes. How to restore the mechanical strength and optimise the degradation, but maintain the microstructure and maximumly suppress the immune rejection, remains challenging. For this aim, we prepared and characterised various crosslinked decellularized rabbit uterus matrix (dUECM) and evaluated performance after uterus xenotransplantation from rabbit to rat. Naturally derived genipin (GP) and procyanidins (PC) were chosen to crosslink the dUECM, producing significant mechanical enhanced crosslinked-dUECM along with prolonged enzymatic degradation rate. Xenogeneic subcutaneous graft studies revealed that PC- and GP-crosslinked dUECM experienced significant cell infiltration and caused low immune reactions, indicating the desired biocompatibility. transplantation of GP- and PC-crosslinked dUECM to a uterus circular excised rat yielded excellent recellularization ability and promoted uterus regeneration after 90 days. While the reconstruction efficacy of crosslinked dUECM is highly depended on the crosslinking degree, crosslinking condition must be carefully evaluated to balance the role of crosslinked dECM in mechanical and biological support for tissue regeneration promotion.

摘要

去细胞细胞外基质(dECM)已被认为是异种移植中有前途的支架,但天然组织 dECM 通常机械强度较弱且迅速降解,从而影响效果。如何恢复机械强度并优化降解,同时保持微观结构并最大程度抑制免疫排斥,仍然是一个挑战。为此,我们制备并表征了各种交联的去细胞兔子宫基质(dUECM),并评估了从兔到大鼠的子宫异种移植后的性能。天然衍生的京尼平(GP)和原花青素(PC)被选择用于交联 dUECM,产生了显著的机械增强交联-dUECM,同时延长了酶降解率。异种皮下移植研究表明,PC 和 GP 交联的 dUECM 经历了显著的细胞浸润,并引起了低免疫反应,表明具有良好的生物相容性。将 GP 和 PC 交联的 dUECM 移植到切除的大鼠子宫圆形部位,在 90 天后产生了出色的再细胞化能力,并促进了子宫再生。然而,交联 dUECM 的重建效果高度依赖于交联程度,必须仔细评估交联条件,以平衡交联 dECM 在机械和生物支持方面对组织再生促进的作用。

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